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    • 1. 发明授权
    • Method and apparatus for plasma ion implantation of solid element
    • 固体元素等离子体离子注入的方法和装置
    • US09139902B2
    • 2015-09-22
    • US13044621
    • 2011-03-10
    • Seung-Hee HanJi-Young ByunHyun-Kwang SeokJun-Hyun HanYu-Chan KimSung-Bai LeeJin-Young Choi
    • Seung-Hee HanJi-Young ByunHyun-Kwang SeokJun-Hyun HanYu-Chan KimSung-Bai LeeJin-Young Choi
    • C23C14/34C23C14/35H01J37/34H01J37/32C23C14/48C23C14/16
    • C23C14/35C23C14/16C23C14/48H01J37/32532H01J37/3438H01J37/3467
    • Disclosed are an apparatus and a method for plasma ion implantation of a solid element, which enable plasma ion implantation of a solid element. According to the apparatus and method, a sample is placed on a sample stage in a vacuum chamber, and the inside of the vacuum chamber is maintained as a vacuum state. And, gas is supplied in the vacuum chamber, a first pulsed DC power is applied to a magnetron sputtering source so as to generate plasma ions of a solid element. The plasma ions of a solid element sputtered from the source are implanted on the surface of the sample. The first power is a pulse DC power capable of applying a high power the moment a pulse is applied while maintaining low average power. And, simultaneously with the applying of the first pulse power, a second power may be supplied to the sample stage, which is a high negative voltage pulse accelerating plasma ions of a solid element to the sample and synchronized to the pulse DC power for magnetron sputtering source. And, inductively coupled plasma may be generated in the vacuum chamber via antenna so as to increase ionization rate of a solid element and lower operation pressure of magnetron sputtering source.
    • 公开了固体元素的等离子体离子注入的装置和方法,其能够实现固体元素的等离子体离子注入。 根据该装置和方法,将样品放置在真空室中的样品台上,并将真空室的内部保持为真空状态。 并且,在真空室中供应气体,将第一脉冲DC功率施加到磁控溅射源,以产生固体元素的等离子体离子。 从源极溅射的固体元素的等离子体离子注入到样品的表面上。 第一功率是脉冲直流电力,能够在维持低平均功率的同时施加脉冲施加高功率。 并且,与施加第一脉冲功率同时,可以将第二功率提供给样品台,该样品台是将固体元素的等离子体离子加速至样品的高负电压脉冲,并与用于磁控溅射的脉冲直流电力同步 资源。 并且,可以通过天线在真空室中产生电感耦合等离子体,以增加固体元素的电离速率和降低磁控管溅射源的操作压力。
    • 2. 发明申请
    • METHOD AND APPARATUS FOR PLASMA ION IMPLANTATION OF SOLID ELEMENT
    • 固体元素等离子体植入的方法与装置
    • US20120228123A1
    • 2012-09-13
    • US13044621
    • 2011-03-10
    • Seung-Hee HANJi-Young ByunHyun-Kwang SeokJun-Hyun HanYu-Chan KimSung-Bai LeeJin-Young Choi
    • Seung-Hee HANJi-Young ByunHyun-Kwang SeokJun-Hyun HanYu-Chan KimSung-Bai LeeJin-Young Choi
    • C23C14/48C23C14/35
    • C23C14/35C23C14/16C23C14/48H01J37/32532H01J37/3438H01J37/3467
    • Disclosed are an apparatus and a method for plasma ion implantation of a solid element, which enable plasma ion implantation of a solid element.According to the apparatus and method, a sample is placed on a sample stage in a vacuum chamber, and the inside of the vacuum chamber is maintained as a vacuum state. And, gas is supplied in the vacuum chamber, a first pulsed DC power is applied to a magnetron sputtering source so as to generate plasma ions of a solid element. The plasma ions of a solid element sputtered from the source are implanted on the surface of the sample. The first power is a pulse DC power capable of applying a high power the moment a pulse is applied while maintaining low average power. And, simultaneously with the applying of the first pulse power, a second power may be supplied to the sample stage, which is a high negative voltage pulse accelerating plasma ions of a solid element to the sample and synchronized to the pulse DC power for magnetron sputtering source. And, inductively coupled plasma may be generated in the vacuum chamber via antenna so as to increase ionization rate of a solid element and lower operation pressure of magnetron sputtering source.
    • 公开了固体元素的等离子体离子注入的装置和方法,其能够实现固体元素的等离子体离子注入。 根据该装置和方法,将样品放置在真空室中的样品台上,并将真空室的内部保持为真空状态。 并且,在真空室中供应气体,将第一脉冲DC功率施加到磁控溅射源,以产生固体元素的等离子体离子。 从源极溅射的固体元素的等离子体离子注入到样品的表面上。 第一功率是脉冲直流电力,能够在维持低平均功率的同时施加脉冲施加高功率。 并且,与施加第一脉冲功率同时,可以将第二功率提供给样品台,该样品台是将固体元素的等离子体离子加速至样品的高负电压脉冲,并与用于磁控溅射的脉冲直流电力同步 资源。 并且,可以通过天线在真空室中产生电感耦合等离子体,以增加固体元素的电离速率和降低磁控管溅射源的操作压力。
    • 3. 发明申请
    • AIR MATTRESS, AIR MATTRESS MANUFACTURING DEVICE AND METHOD
    • 空气质量,空气质量制造装置和方法
    • US20120311789A1
    • 2012-12-13
    • US13581018
    • 2011-02-23
    • Seong-Chan ParkJin-Young ChoiDong-Jin Kim
    • Seong-Chan ParkJin-Young ChoiDong-Jin Kim
    • A47C27/08B29C33/42B29C39/08
    • A47C27/081B29C33/42
    • Disclosed are an air mattress and an air mattress manufacturing device and method, which can reduce manufacturing costs, enhance the rigidity of the bottom plate, and shorten and automate the manufacturing process. The air mattress of the present invention comprises: a cushion portion, which has multiple air sacs, and which is formed from a first resin composition made from a mixture of a synthetic resin and a plasticizer, so as to have elasticity and flexibility; and a bottom plate, which is coupled with the cushion portion, and which is formed from a second resin composition made from a mixture of a synthetic resin, a plasticizer having less than or equal to 50% of the plasticizer mixed into the first resin composition, and a rigid material for enhancing the rigidity of the air mattress, and thus the manufacturing costs and the rigidity thereof can be enhanced.
    • 公开了一种空气床垫和空气床垫的制造装置和方法,其可以降低制造成本,提高底板的刚性,并缩短制造过程的自动化。 本发明的空气床垫包括:具有多个气囊的缓冲部分,其由由合成树脂和增塑剂的混合物制成的第一树脂组合物形成,以具有弹性和柔性; 以及与所述缓冲部结合的底板,所述底板由第二树脂组合物形成,所述第二树脂组合物由合成树脂,具有少于或等于所述第一树脂组合物混合的增塑剂的50%的增塑剂 ,以及用于增强空气床垫的刚性的刚性材料,因此可以提高制造成本和刚性。
    • 5. 发明申请
    • Display device
    • 显示设备
    • US20080030445A1
    • 2008-02-07
    • US11827965
    • 2007-07-13
    • Jin-Young ChoiJin Jeon
    • Jin-Young ChoiJin Jeon
    • G09G3/36
    • G09G3/3659G09G3/3677G09G2330/021
    • In one embodiment, a display device includes a plurality of gate lines transmitting normal gate signals, a plurality of data lines crossing the gate lines and transmitting data voltages, and a plurality of storage electrode lines extending in parallel to the gate lines and transmitting storage signals. The display device may further include a plurality of pixels arranging in a matrix, each pixel having a switching element connected to the gate line and the data line, a liquid crystal capacitor connected to the switching element and a common voltage, and a storage capacitor connected to the switching element and the storage electrode line. The display device may further include a plurality of pseudo gate driving circuits generating pseudo gate signals based on the normal gate signals, and a plurality of storage signal generating circuits generating the storage signals based on the pseudo gate signals.
    • 在一个实施例中,显示装置包括多条栅极线,其传送正常栅极信号,与栅极线交叉并传输数据电压的多条数据线,以及与栅极线并联延伸的多条存储电极线,并传输存储信号 。 显示装置还可以包括以矩阵形式布置的多个像素,每个像素具有连接到栅极线和数据线的开关元件,连接到开关元件的液晶电容器和公共电压,以及连接的存储电容器 到开关元件和存储电极线。 显示装置还可以包括基于正常栅极信号产生伪栅极信号的多个伪栅极驱动电路,以及基于伪栅极信号产生存储信号的多个存储信号生成电路。
    • 6. 发明申请
    • Display device
    • 显示设备
    • US20070195049A1
    • 2007-08-23
    • US11708094
    • 2007-02-16
    • Jin-Young ChoiJin Jeon
    • Jin-Young ChoiJin Jeon
    • G09G3/36
    • G09G3/3655G09G3/3614G09G2300/0876G09G2310/0281G09G2310/08G09G2320/0252G09G2330/021
    • A display device includes gate lines, data lines, storage electrode lines and pixels. Each pixel includes a switching element connected to a gate line and a data line, a liquid crystal capacitor connected to the switching element and a common voltage, and a storage capacitor connected to the switching element and a storage electrode line. Signal generating circuits of the display generate storage signals based on gate signals in such a way that the storage signal applied to each pixel has a changed voltage level immediately after the completion of the charging of the data voltage into the liquid crystal capacitor and the storage capacitor. This enables the pixel electrode to reach the target voltage in a single frame, reduces the power consumption of the display, and improves its response time, reliability and durability.
    • 显示装置包括栅极线,数据线,存储电极线和像素。 每个像素包括连接到栅极线和数据线的开关元件,连接到开关元件的液晶电容器和公共电压,以及连接到开关元件和存储电极线的存储电容器。 显示器的信号产生电路基于栅极信号产生存储信号,使得施加到每个像素的存储信号在数据电压充入液晶电容器和存储电容器完成之后立即具有改变的电压电平 。 这使得像素电极能够在单个帧中达到目标电压,降低显示器的功耗,并且提高其响应时间,可靠性和耐久性。
    • 8. 发明授权
    • Multiple port protocol test apparatus and method thereof
    • 多端口协议测试装置及其方法
    • US5897609A
    • 1999-04-27
    • US771268
    • 1996-12-20
    • Jin-Young ChoiWeon-Soon Kim
    • Jin-Young ChoiWeon-Soon Kim
    • H04L29/14H04L12/26H04L12/70H04L29/06H04M3/22H04M3/24H04J3/14H04M3/08
    • H04L43/50H04L12/2697H04M3/22H04M3/242H04L69/18
    • An improved multiple port protocol test apparatus and a method thereof by which it is possible to more easily perform a test with respect to the multiple port protocol, and increase an adaptability and interrelationship with respect to the standard of the system. The apparatus includes a test management unit for testing and controlling a protocol and performing management related thereto, a multiple port protocol testing unit connected to the test management unit for generating and controlling a test event with respect to the multiple port of a network system, a plurality of lower protocol processing unit connected to the multiple port protocol testing unit for performing an emulation function with respect to a lower protocol of the test objective protocol, and transferring a test-related event, a timer processing unit connected to the multiple port protocol testing unit for processing a timer information, a message distribution unit connected to the lower protocol processing unit for transferring a test event to a corresponding port of the test objective system, and transferring the received event to the lower protocol processing unit of a corresponding port, and a test objective system access unit connected to the message distribution unit for a physical connection with a test objective system.
    • 一种改进的多端口协议测试装置及其方法,通过该方法可以更容易地执行关于多端口协议的测试,并且增加相对于系统标准的适应性和相互关系。 该装置包括用于测试和控制协议并执行相关管理的测试管理单元,连接到测试管理单元的多端口协议测试单元,用于生成和控制关于网络系统的多个端口的测试事件, 连接到多端口协议测试单元的多个下协议处理单元,用于执行关于测试目标协议的较低协议的仿真功能,以及传送测试相关事件,连接到多端口协议测试的定时器处理单元 用于处理定时器信息的单元,连接到下协议处理单元的用于将测试事件传送到测试对象系统的对应端口的消息分发单元,以及将接收的事件传送到相应端口的下协议处理单元,以及 连接到消息分发单元fo的测试对象系统访问单元 与测试目标系统的物理连接。
    • 9. 发明授权
    • Active attentional sampling method for accelerating background subtraction
    • 主动注意抽样方法加速背景减法
    • US09256958B2
    • 2016-02-09
    • US14109788
    • 2013-12-17
    • Hyung-Jin ChangHa-Wook JeongJin-Young Choi
    • Hyung-Jin ChangHa-Wook JeongJin-Young Choi
    • G06T7/20G06K9/32G06T7/00G06K9/00
    • G06T7/2053G06K9/00771G06K9/3233G06T7/11G06T7/143G06T7/194G06T7/254G06T2207/10016G06T2207/20076G06T2207/30232
    • An active attentional sampling technology for accelerating background subtraction from input videos, more specifically, an active attentional sampling technology for accelerating background subtraction by removing background region from the input video and then applying foreground probability map and sampling mask according to temporal property, spatial property and frequency property of the input video in favor of the pixel-wise background subtraction algorithm is provided. The background subtraction is accomplished by generating active attentional sampling mask for input video and then processing each frame of the input video only for regions corresponding to the sampling mask, which renders the background subtraction be much accelerated. That is, the present invention successfully speeds up pixel-wise background subtraction methods approximately 6.6 times without deteriorating detection performance. Therefore, according to the present invention, real-time detection with full-HD video is successfully achieved through various conventional background subtraction algorithms.
    • 一种主动注意采样技术,用于加速输入视频的背景减除,更具体地说,是一种主动注意采样技术,用于通过从输入视频中去除背景区域来加速背景减除,然后根据时间属性,空间属性应用前景概率图和采样掩码 提供输入视频的频率特性,有利于像素方式的背景减法算法。 通过产生用于输入视频的主动注意采样掩码,然后仅对与采样掩模相对应的区域处理输入视频的每个帧来实现背景减除,这使得背景减除被大大加速。 也就是说,本发明成功地加速了像素方式的背景减除方法大约6.6次,而不会降低检测性能。 因此,根据本发明,通过各种常规的背景减法算法成功地实现了全高清视频的实时检测。